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首页> 外文期刊>Soils and foundations >DISCRETE ELEMENT ANALYSIS OF THE RESPONSE OF GRANULAR MATERIALS DURING CYCLIC LOADING
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DISCRETE ELEMENT ANALYSIS OF THE RESPONSE OF GRANULAR MATERIALS DURING CYCLIC LOADING

机译:循环荷载作用下颗粒材料响应的离散元分析

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References(31) Soil can experience cyclic or repeated loadings in a range of situations and prediction of cyclic soil response is obviously important to geotechnical engineers. The particulate nature of soil results in highly complex, non-linear response characteristics, and developing models that can capture soil response under cyclic loading is non-trivial. The distinct element method (DEM) can be used to study the fundamental, particle-scale mechanics of granular materials, and offers much promise as a tool to advance understanding of soil response. The first stage in adopting DEM to model cyclic soil response is to quantitatively demonstrate that a DEM model can replicate physical test data, as analytical validation of DEM models for random assemblies of particles under repeated loading is not viable. This paper describes a series of strain-controlled cyclic triaxial tests on an ideal granular material (steel spheres) that were used to validate the capability of an axi-symmetric DEM model to analyse cyclic loading. The DEM model was then used in a parametric study to examine the particle-scale mechanics of the response of specimens of uniform spheres to 50 cycles of loading with various strain amplitudes. The distribution of contact force orientations and magnitudes during testing was examined. The simulations indicate that both the fabric anisotropy and coordination number continued to evolve over the 50 cycles considered. While the variation in the macro-scale response was less marked, there is a clear relation between the micro-scale parameters and the overall specimen response.
机译:参考文献(31)土壤在一定情况下会经历周期性或反复的荷载,循环土壤响应的预测对于岩土工程师而言显然很重要。土壤的颗粒性质会导致高度复杂的非线性响应特性,并且开发能够在循环载荷下捕获土壤响应的模型并非易事。独特元素法(DEM)可用于研究粒状材料的基本,颗粒尺度的力学,并为提高对土壤响应的了解提供了广阔的前景。采用DEM对循环土壤响应进行建模的第一阶段是定量证明DEM模型可以复制物理测试数据,因为在重复加载下对颗粒随机组装的DEM模型进行分析验证是不可行的。本文介绍了在理想的颗粒材料(钢球)上进行的一系列应变控制的循环三轴试验,这些试验用于验证轴对称DEM模型分析循环载荷的能力。然后将DEM模型用于参数研究中,以检查均匀球体样品对50个不同应变幅度的载荷循环的响应的颗粒尺度力学。在测试过程中检查了接触力方向和大小的分布。模拟表明,在考虑的50个循环中,织物的各向异性和配位数均继续发展。尽管宏观尺度响应的变化不那么明显,但微观尺度参数与整体样本响应之间存在明显的关系。

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